The total resistance of any series circuit is equal to the sum of the individual resistances. Calculating values for two or more resistors in series is simple just add all the values up.

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The series connection ensures that the same current flows through all resistors.
Resistors in series voltage. In case of resistors in series the total voltage across the resistors is equal to sum of individual potential differences across each resistor. Resistors in series resistors are said to be connected in series when they are daisy chained together in a single line. Then series circuits are voltage dividers.
Lets take a look at some examples of series circuits that demonstrate these principles. It seems reasonable that the total resistance is the sum of the individual resistances considering that the current has to pass through each resistor in sequence. Resistors in series carry the same current but the voltage drop across them is not the same as their individual resistance values will create different voltage drops across each resistor as determined by ohms law v ir.
For resistors in series the voltage across each resistor does not follow the same rule as the current. Shows resistors in series connected to a voltage source. The supply voltage in a series circuit is equal to the sum of the individual voltage drops.

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